195 resultados para TRYPANOSOMES
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Pre-mRNA maturation in trypanosomatids occurs through a process called trans-splicing which involves excision of introns and union of exons in two independent transcripts. For the first time, we present the standardization of Trypanosoma cruzi permeable cells (Y strain) as a model for trans-splicing study of mRNAs in trypanosomes, following by RNase protection reaction, which localizes the SL exon and intron. This trans-splicing reaction in vitro was also used to analyze the influence of NFOH-121, a nitrofurazone-derivative, on this mechanism. The results suggested that the prodrug affects the RNA processing in these parasites, but the trans-splicing reaction still occurred.
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No fully effective treatment has been developed since the discovery of Chagas' disease by Carlos Chagas in 1909. Since drug-resistant Trypanosoma cruzi strains are occurring and the current therapy is effectiveness in the acute phase but with various adverse side effects, more studies are needed to characterize the susceptibility of T. cruzi to new drugs. Many natural and/or synthetic substances showing trypanocidal activity have been used, even though they are not likely to be turned into clinically approved drugs. Originally, drug screening was performed using natural products, with only limited knowledge of the molecular mechanism involved in the development of diseases. Trans-splicing, which is unusual RNA processing reaction and occurs in nematodes and trypanosomes, implies the processing of polycistronic transcription units into individual mRNAs; a short transcript spliced leader (SL RNA) is trans-spliced to the acceptor pre-mRNA, giving origin to the mature mRNA. In the present study, permeable cells of T. cruzi epimastigote forms (Y, BOL and NCS strains) were treated to evaluate the interference of two drugs (hydroxymethylnitrofurazone - NFOH-121 and nitrofurazone) in the trans-splicing reaction using silver-stained PAGE analysis. Both drugs induced a significant reduction in RNA processing at concentrations from 5 to 12.5 µM. These data agreed with the biological findings, since the number of parasites decreased, especially with NFOH-121. This proposed methodology allows a rapid and cost-effective screening strategy for detecting drug interference in the trans-splicing mechanism of T. cruzi.
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Studies of telomere structure and maintenance in trypanosomatids have provided insights into the evolutionary origin and conservation of some telomeric components shared by trypanosomes and vertebrates. For example, trypanosomatid telomeres are maintained by telomerase and consist of the canonical TTAGGG repeats, which in Trypanosoma brucei can form telomeric loops (t-loops). However, the telomeric chromatin of trypanosomatids is composed of organ ism-specific proteins and other proteins that share little sequence similarity with their vertebrate counterparts. Because telomere maintenance mechanisms are essential for genome stability, we propose that the particular features shown by the trypanosome telomeric chromatin hold the key for the design of antiparasitic drugs.
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Parasite virulence genes are usually associated with telomeres. The clustering of the telomeres, together with their particular spatial distribution in the nucleus of human parasites such as Plasmodium falciparum and Trypanosoma brucei, has been suggested to play a role in facilitating ectopic recombination and in the emergence of new antigenic variants. Leishmania parasites, as well as other trypanosomes, have unusual gene expression characteristics, such as polycistronic and constitutive transcription of protein-coding genes. Leishmania subtelomeric regions are even more unique because unlike these regions in other trypanosomes they are devoid of virulence genes. Given these peculiarities of Leishmania, we sought to investigate how telomeres are organized in the nucleus of Leishmania major parasites at both the human and insect stages of their life cycle. We developed a new automated and precise method for identifying telomere position in the three-dimensional space of the nucleus, and we found that the telomeres are organized in clusters present in similar numbers in both the human and insect stages. While the number of clusters remained the same, their distribution differed between the two stages. The telomeric clusters were found more concentrated near the center of the nucleus in the human stage than in the insect stage suggesting reorganization during the parasite's differentiation process between the two hosts. These data provide the first 3D analysis of Leishmania telomere organization. The possible biological implications of these findings are discussed.
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Trata-se de paciente do sexo feminino, com 59 anos de idade, procedente de Itaporanga (SP), diabética e nefropata crônica, internada em virtude de surtos de pielonefnte e insuficiência renal aguda. Dentre outras medidas terapêuticas, recebeu transfusão de sangue. Cerca de dois dias após a última transfusão (sangue oriundo de doador, posteriormente identificado como chagásico) encontraram-se formas tripomastigotas de Trypanosoma cruzi em lâmina preparada para execução de hemograma. Iniciou-se tratamento com Benzonidazol. A paciente cursou para, pleuropneumonia e de secreção purulenta cirúrgica isolou-se Klebsiella spp. A septicemia conduziu a paciente ao êxito letal. Nenhuma lesão tecidual foi observada no miocárdio, no sistema nervoso central, adrenal ou nos demais órgãos examinados.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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The taxonomic and phylogenetic relationships of Trypanosoma vivax are controversial. It is generally suggested that South American, and East and West African isolates could be classified as subspecies or species allied to T. vivax. This is the first phylogenetic study to compare South American isolates (Brazil and Venezuela) with West/East African T. vivax isolates. Phylogeny using ribosomal sequences positioned all T. vivax isolates tightly together on the periphery of the clade containing all Salivarian trypanosomes. The same branching of isolates within T. vivax clade was observed in all inferred phylogenies using different data sets of sequences (SSU, SSU plus 5.8S or whole ITS rDNA). T. vivax from Brazil, Venezuela and West Africa (Nigeria) were closely related corroborating the West African origin of South American T. vivax, whereas a large genetic distance separated these isolates from the East African isolate (Kenya) analysed. Brazilian isolates from cattle asymptomatic or showing distinct pathology were highly homogeneous. This study did not disclose significant polymorphism to separate West African and South American isolates into different species/subspecies and indicate that the complexity of T. vivax in Africa and of the whole subgenus Trypanosoma (Duttonella) might be higher than previously believed. © 2006 Cambridge University Press.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Pós-graduação em Biotecnologia - IQ
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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A doença de Chagas aguda (DCA) é endêmica na Amazônia Brasileira sendo a via oral a principal forma de transmissão com surtos familiares ou multifamiliares. Esta via independe da colonização de triatomíneos no domicílio e a ocorrência é regular com média de 100 casos/ano e 5% de óbitos. Apresenta distribuição espaço-temporal bem definida, colocando a enfermidade como emergência de importância em saúde pública nos estados do Pará, Amapá e Amazonas. A presença de mamíferos e triatomíneos silvestres, infectados naturalmente com o c e habitando distintos ecótopos terrestres e arbóreos, mantém um intenso ciclo enzoótico em toda a Amazônia. Perfis moleculares de linhagens de T. cruzi na região estão associados a hospedeiros mamíferos (incluindo o homem), triatomíneos, ecótopos e manifestações clínicas. Foram estudados quatro surtos de DCA ocorridos nos Municípios de Barcarena, Belém e Cachoeira do Arari no Estado do Pará e em Santana, no Estado do Amapá e abordados os aspectos epidemiológicos (parasitológico e sorológico manifestações clínicas, reservatórios e triatomíneos silvestres associados aos surtos). Foi investigado também em São Luís, Estado do Maranhão, o ciclo domiciliar e silvestre do T. cruzi, porém sem a ocorrência de casos de DCA. O estudo incluiu também a genotipagem molecular de T. cruzi pelo gene de mini-exon dos isolados (homem, mamíferos e triatomíneos silvestres) associados aos diferentes ciclos de transmissão. O diagnóstico parasitológico foi confirmado em 63 pacientes com a seguinte sensibilidade nos testes aplicados: 41,3% (26/63) pela gota espessa; 58,7% (37/63) no QBC; 79,4% (50/63) no xenodiagnóstico e 61,9% (39/63) na hemocultura. A sorologia de 2648 pessoas por hemaglutinação indireta (HAI) foi de 3,05% (81/2648) e imunofluorescência indireta IFI apresentaram respectivamente resultados de e 2,49% (66/2648) para IgG e 2,37 (63/2648) para IgM. Os resultados em São Luís foram todos negativos. Foram capturados 24 mamíferos, 13 Didelphis marsupialis, 1 Marmosa cinerea, 5 Philander opossum, 3 Metachirus nudicaudatus, 1 Oryzomys macconnelli, 1 Oecomys bicolor e 433 R. rattus. A taxa de infecção para T. cruzi foi de 7,14% (29/404). Um total de 3279 triatomíneos foi capturado sendo: Triatoma rubrofasciata (n=3008), com taxa de infecção (TI) de 30.46%, (39/128), Rhodnius robustus (n=137), com TI de 76% (79/104), R. pictipes (n=94), TI de 56,9% (49/86%), E. mucronatus (n=6) e P. geniculatus (n=12) com TI de 50% e as demais espécies sem infecção R. neglectus (n=5) e P. lignarius (n=6). As palmeiras foram os principais ecótopos dos triatomíneos silvestres. O urucurizeiro (S. martiana) apresentava infestação de 47,41% (101/213) dos triatomíneos; o “inajazeiro” (Maximiliana regia) 35,21% (75/213); o “babaçueiro” (Orbgnya. speciosa) 5,16% (11/213); o “dendezeiro” (Eleas melanoccoca) 1,87% (4/213) e a “bacabeira” (Oenocarpus bacaba) 10,32% (22/213). Para a genotipagem foram obtidos 46 isolados de tripanossomas de origem humana, 31 isolamentos de mamíferos silvestres e 74 amostras de triatomíneos. Todos os isolados foram caracterizados como da linhagem TcI de T. cruzi. Todos os casos humanos no Pará foram caracterizados como positivos por exame parasitológico. Nem todos os casos de Santana, Amapá, apresentaram casos parasitológicos positivos, pela demora do diagnóstico, mesmo assim estes foram definidos como DCA. Exames como xenodiagnóstico, hemocultura e o QBC® foram mais sensíveis do que a gota espessa. A sorologia por HAI e IFI (IgG e IgM) tiveram excelente sensibilidade para detectar os casos agudos em tempos distintos de infecção. O achado de mamíferos (D. marsupilais) e triatomíneos silvestres (R. pictipes e P. geniculatus) infectados com consideráveis taxas de infecção para T. cruzi no entorno das residências dos pacientes sustentam a importância destes hospedeiros associados à transmissão da DCA. Apesar de na Amazônia circularem vários genótipos de T. cruzi nos diferentes hospedeiros, neste trabalho foi identificada somente a linhagem TCI de T. cruzi, a mais predominante na Região. Em São Luís, Maranhão, embora sem registro de casos de DCA apresenta um ciclo domiciliar associados ao rato doméstico e o triatomíneo da espécie T. rubrofasciata, e um ciclo silvestre mantido por didelfídeos. Nos dois ciclos circulam a linhagem TCI de T. cruzi. Estudos com marcadores de maior resolução com isolados de T. cruzi regionais podem ajudar a esclarecer os ciclos de transmissão, as rotas de contaminação e os hospedeiros envolvidos em casos de DCA na Amazônia.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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In silico analyses of Leishmania spp. genome data are a powerful resource to improve the understanding of these pathogens' biology. Trypanosomatids such as Leishmania spp. have their protein-coding genes grouped in long polycistronic units of functionally unrelated genes. The control of gene expression happens by a variety of posttranscriptional mechanisms. The high degree of synteny among Leishmania species is accompanied by highly conserved coding sequences (CDS) and poorly conserved intercoding untranslated sequences. To identify the elements involved in the control of gene expression, we conducted an in silico investigation to find conserved intercoding sequences (CICS) in the genomes of L major, L infantum, and L braziliensis. We used a combination of computational tools, such as Linux-Shell, PERL and R languages, BLAST, MSPcrunch, SSAKE, and Pred-A-Term algorithms to construct a pipeline which was able to: (i) search for conservation in target-regions, (ii) eliminate CICS redundancy and mask repeat elements, (iii) predict the mRNA's extremities, (iv) analyze the distribution of orthologous genes within the generated LeishCICS-clusters, (v) assign GO terms to the LeishCICS-clusters. and (vi) provide statistical support for the gene-enrichment annotation. We associated the LeishCICS-cluster data, generated at the end of the pipeline, with the expression profile oft. donovani genes during promastigote-amastigote differentiation, as previously evaluated by others (GEO accession: GSE21936). A Pearson's correlation coefficient greater than 0.5 was observed for 730 LeishCICS-clusters containing from 2 to 17 genes. The designed computational pipeline is a useful tool and its application identified potential regulatory cis elements and putative regulons in Leishmania. (C) 2012 Elsevier B.V. All rights reserved.
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Trypanosoma cruzi, the agent of Chagas disease, is a complex of genetically diverse isolates highly phylogenetically related to T. cruzi-like species, Trypanosoma cruzi marinkellei and Trypanosoma dionisii, all sharing morphology of blood and culture forms and development within cells. However, they differ in hosts, vectors and pathogenicity: T. cruzi is a human pathogen infective to virtually all mammals whilst the other two species are non-pathogenic and bat restricted. Previous studies suggest that variations in expression levels and genetic diversity of cruzipain, the major isoform of cathepsin L-like (CATL) enzymes of T. cruzi, correlate with levels of cellular invasion, differentiation, virulence and pathogenicity of distinct strains. In this study, we compared 80 sequences of genes encoding cruzipain from 25 T. cruzi isolates representative of all discrete typing units (DTUs TcI-TcVI) and the new genotype Tcbat and 10 sequences of homologous genes from other species. The catalytic domain repertoires diverged according to DTUs and trypanosome species. Relatively homogeneous sequences are found within and among isolates of the same DTU except TcV and TcVI, which displayed sequences unique or identical to those of TcII and TcIII, supporting their origin from the hybridization between these two DTUs. In network genealogies, sequences from T. cruzi clustered tightly together and closer to T. c. marinkellei than to T. dionisii and largely differed from homologues of T. rangeli and T. b. brucei. Here, analysis of isolates representative of the overall biological and genetic diversity of T. cruzi and closest T. cruzi-like species evidenced DTU- and species-specific polymorphisms corroborating phylogenetic relationships inferred with other genes. Comparison of both phylogenetically close and distant trypanosomes is valuable to understand host-parasite interactions, virulence and pathogenicity. Our findings corroborate cruzipain as valuable target for drugs, vaccine, diagnostic and genotyping approaches.